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黑盒描述电子相关与自旋扩展组态相互作用模型:实现与评估。

Black-Box Description of Electron Correlation with the Spin-Extended Configuration Interaction Model: Implementation and Assessment.

机构信息

Graduate School of System Informatics, Kobe University , Kobe 657-8501, Japan.

出版信息

J Chem Theory Comput. 2016 Apr 12;12(4):1741-59. doi: 10.1021/acs.jctc.6b00137. Epub 2016 Apr 4.

Abstract

In our recent Communication (J. Chem. Phys. 2016, 144, 011101), we proposed Wick's theorem for nonorthogonal determinants and applied it to spin-extended configuration interaction with singles and doubles (ECISD) based on spin-projected unrestricted Hartree-Fock (SUHF), given that SUHF is a special case of nonorthogonal CI. It was shown that ECISD is accurate for bond-dissociation processes of several representative molecules. In the present work, we give a detailed derivation of ECISD and report an efficient implementation with two physically motivated preconditioning schemes in the generalized Davidson diagonalization for ECISD, whose Hamiltonian and overlap are not diagonal dominant due to SUHF's nonorthogonal character. In the first approach, we exploit the properties of corresponding pair orbitals and spin-projection operator and rotate the spin-projected CI basis so that the Hamiltonian is approximately diagonal. The second scheme is based on the normal ordered Hamiltonian, which suggests neglecting the expensive two-particle terms in the preconditioning. To enable frozen-core approximations in ECISD, core orbitals were introduced in SUHF. We also show the validity of our method with various numerical examples for static correlations, apart from the left-right correlation in bond-dissociation processes: the ground state energies of the Be isoelectronic series, excitation energies of representative small molecules, and spectroscopic constants of the strongly correlated BN singlet state. Several aspects of ECISD were studied.

摘要

在我们最近的交流(J. Chem. Phys. 2016, 144, 011101)中,我们提出了非正交行列式的 Wick 定理,并将其应用于基于自旋投影无限制哈特利-福克(SUHF)的自旋扩展组态相互作用与单重态和双重态(ECISD),因为 SUHF 是非正交 CI 的一个特例。结果表明,ECISD 对几个代表性分子的键离解过程是准确的。在目前的工作中,我们详细推导了 ECISD,并报告了在 ECISD 的广义戴维森对角化中使用两种具有物理意义的预处理方案的有效实现,由于 SUHF 的非正交性质,其哈密顿量和重叠矩阵不是对角占优的。在第一种方法中,我们利用相应对轨道和自旋投影算子的性质,旋转自旋投影 CI 基,使哈密顿量近似对角化。第二种方案基于正则化哈密顿量,建议在预处理中忽略昂贵的双粒子项。为了在 ECISD 中实现冻结核近似,我们在 SUHF 中引入了核轨道。除了键离解过程中的左右相关外,我们还通过各种静态相关的数值示例证明了我们方法的有效性:Be 等电子系列的基态能量、代表性小分子的激发能以及 BN 单重态的光谱常数。还研究了 ECISD 的几个方面。

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